【2h】

Protoribosome by quantum kernel energy method

机译:量子核能法原核小体

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摘要

Experimental evidence suggests the existence of an RNA molecular prebiotic entity, called by us the “protoribosome,” which may have evolved in the RNA world before evolution of the genetic code and proteins. This vestige of the RNA world, which possesses all of the capabilities required for peptide bond formation, seems to be still functioning in the heart of all of the contemporary ribosome. Within the modern ribosome this remnant includes the peptidyl transferase center. Its highly conserved nucleotide sequence is suggestive of its robustness under diverse environmental conditions, and hence on its prebiotic origin. Its twofold pseudosymmetry suggests that this entity could have been a dimer of self-folding RNA units that formed a pocket within which two activated amino acids might be accommodated, similar to the binding mode of modern tRNA molecules that carry amino acids or peptidyl moieties. Using quantum mechanics and crystal coordinates, this work studies the question of whether the putative protoribosome has properties necessary to function as an evolutionary precursor to the modern ribosome. The quantum model used in the calculations is density functional theory–B3LYP/3–21G*, implemented using the kernel energy method to make the computations practical and efficient. It occurs that the necessary conditions that would characterize a practicable protoribosome—namely (i) energetic structural stability and (ii) energetically stable attachment to substrates—are both well satisfied.
机译:实验证据表明存在RNA分子益生元实体,我们称其为“原核小体”,它可能在遗传密码和蛋白质进化之前在RNA世界中进化了。 RNA世界的这一痕迹拥有肽键形成所需的所有功能,似乎仍在所有当代核糖体的心脏中发挥作用。在现代核糖体中,该残留物包括肽基转移酶中心。其高度保守的核苷酸序列暗示了其在各种环境条件下的稳健性,因此暗示了其益生元的起源。其双重假对称性表明该实体可能是自我折叠RNA单元的二聚体,形成了一个口袋,可以在其中容纳两个活化的氨基酸,类似于携带氨基酸或肽基部分的现代tRNA分子的结合方式。利用量子力学和晶体坐标,这项工作研究了推定的原核糖体是否具有充当现代核糖体的进化前体所必需的特性的问题。计算中使用的量子模型是密度泛函理论– B3LYP / 3–21G *,该算法使用核能方法实施,以使计算实用且高效。事实证明,表征可行的原核小体的必要条件(即(i)能量结构稳定性和(ii)能量稳定地附着在基质上)都得到了充分满足。

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